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Lattice Vibration, Heat Capacity and Vibration Entropy of Single-Layer Hexagonal-BN

机译:单层六角形-BN的格子振动,热容量和振动熵

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摘要

The phonon spectrum of zigzag h-BN nanoribbons with the edges passivated by hydrogen atoms under tensile strain along the axis direction were calculated by first-principle calculations. It is found that the uniaxial strain can lead to a narrow frequency range of lattice vibration modes. But it hardly affects the two highest frequency modes due to the vibration of B-H or N-H bonds. In particular, the strain usually promotes the softening of phonon modes. It means that more phonons should be activated at a given temperature. This may result in the changes of thermal properties, such as, heat capacity and vibration entropy.
机译:通过第一原理计算计算与沿轴向沿轴方向的拉伸应变下的氢原子钝化的边缘的Zigzag H-BN纳米峰的声光谱。发现单轴应变会导致晶格振动模式的窄频率范围。但由于B-H或N-H键的振动,它几乎不会影响两个最高频率模式。特别地,该菌株通常促进声音模式的软化。这意味着应在给定温度下激活更多的声子。这可能导致热性能的变化,例如热容量和振动熵。

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